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Super heat resistant ceramic insulated wire

机译:超耐热陶瓷绝缘电线

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Although the fast breeder reactor (FBR) was developed by many countries as the economical nuclear reactor, many countries have stopped developing FBR, except France and Japan, for economic reasons. Nuclear power is important for Japan as a source of energy, therefore Japan will continue to investigate nuclear energy such as the thermonuclear fusion reactor and FBR. This experiment will require high performance ceramic insulated wire which has the features to maintain resistivity against high level neutron ray and stability at high temperature above 500/spl deg/C. In order to deal with this requirement, the authors have developed conductors with copper as the core conductor, nickel or titanium as the outer diffusion prevention layer, and high melting point metal, e.g., niobium, tantalum, as the internal diffusion prevention layer between core conductor and outer diffusion prevention layer. As a result, these conductors show good response to the requirement. This paper describes the fundamental concept for ceramic insulated wire to show the stability high temperature above 500/spl deg/C, furthermore, and introduces new knowledge obtained from this study.
机译:尽管许多国家将快速增殖反应堆(FBR)开发为经济核反应堆,但出于经济原因,除法国和日本外,许多国家已停止开发FBR。核能对于日本作为能源来说非常重要,因此日本将继续研究核能,例如热核聚变反应堆和FBR。该实验将需要高性能的陶瓷绝缘电线,该电线应具有对高水平中子射线的抵抗力以及在高于500 / spl deg / C的高温下具有稳定性的特征。为了满足这一要求,作者开发了以铜为芯导体,镍或钛为外扩散防止层,高熔点金属(例如铌,钽)为芯间内部扩散防止层的导体。导体和外部防扩散层。结果,这些导体对要求显示出良好的响应。本文介绍了陶瓷绝缘电线的基本概念,以显示在500 / spl deg / C以上的高温稳定性,并介绍了从这项研究中获得的新知识。

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